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陈刚
- 教师拼音名称:Chen Gang
- 出生日期:1979-02-26
- 性别:男
- 职称:教授
- 所属院系:化工学院
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· Chen G,Gao JW, Cui Y, Gao H, Guo X, Wu SZ. Effects of strain rate on the low cycle fatigue behavior of AZ31B magnesium alloy processed by SMAT. Journal of Alloys and Compounds, 2018; In press. (★/◆) IF:3.133
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· Wang XJ, Xu DK, Wu RZ, Chen XB, Peng QM, Jin L, Xin YC, Zhang ZQ, Liu Y, Chen XH, Chen G, Deng KK, Wang HY ( All authors contribute equally to this work). What is going on in magnesium alloys?Journal of Materials Science & Technology, 2017; In press. (★/◆) IF: 2.764
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· Chen G, Ren JN, Gao H, Cui Y, Chen X. Pseudoelastic and corrosion behaviors of Mg ZEK100 alloy under cyclic loading. International Journal of Fatigue, 2017; 103: 466-477. (★/◆) IF: 2.899
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· Lin Q, Shi SW, Wang L, Chen S, Chen X, Chen G*. In-plane Biaxial Cyclic Mechanical Behavior of Proton Exchange Membranes. Journal of Power Sources, 2017; 360: 495-503. (★/◆) IF: 6.333
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· Chen G*, Zhao XC, Wu H. A critical review of constitutive models for solders in electronic packaging. Advances in Mechanical Engineering, 2017; 9(8): 1-21. IF: 0.827
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· Chen G*, Xu C, Qu H, Chen X. Ratcheting behavior of zirconium alloy tubes under combined cyclic axial load and internal pressure at 350 °C, Journal of Nuclear Materials, 2017; 491: 138-148. (★/◆) IF: 2.048.
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· Chen G, Zhang X, Xu DK, Li DH, Chen X, Zhang Z*, Multiaxial ratcheting behavior of zirconium alloy tubes under combined cyclic axial load and internal pressure, Journal of Nuclear Materials, 2017; 489: 99-108. (★/◆) IF: 2.048.
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· Chen G, Wu H, Gao JW, Lin Q*, Development of high-frequency and large-stroke fatigue testing system for rubber, Review of Scientific Instruments, 2017; 88(4): 045113. (★/◆) IF: 1.336.
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· Shi LT, Mei YH, Chen G*, Chen X. In Situ X-Ray Observation and Simulation of Ratcheting-Fatigue Interactions in Solder Joints, Electronic Materials Letters, 2017; 13(1): 97-106. (★/◆) IF: 2.057.
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· Chen G*, Zhang Y, Xu DK, Lin YC, Chen X, Low Cycle Fatigue and Creep-Fatigue Interaction Behavior of Nickel-Base Superalloy GH4169 at Elevated Temperature of 650 oC, Materials Science & Engineering A. 2016; 655: 175-182. (★/◆) IF: 2.647